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高分子基PTC材料PTC强度的影响因素 被引量:5

Factors Influencing PTC Intensity of PPTC
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摘要 本文探讨了影响高分子基PTC材料PTC强度的几种因素,得出高分子基PTC材料要想获得高PTC强度,需综合考虑基体树脂、导电粒子、加工工艺的影响的结论。 Factors influencing PTC intensity of PPTC were discussed in this paper.It is concluded that high PTC intensity can be achieved if basic resin,conductive filler,processing technology were considered comprehensively.
作者 袁晓芳
出处 《塑料制造》 2010年第10期65-67,共3页 Plastics Manufacture
关键词 PTC强度 基体树脂 导电粒子 加工工艺 PTC intensity basic resin conductive filler processing technology
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参考文献15

  • 1Frydman E.UK No. 604695171814S [P]. 1945.
  • 2Kohler F. U.S. No. 3243753 [P]. 1966.
  • 3Meyer, J. Transition temperature as a guide to selection of polymers suitable for PTC materials [J]. Polym.Eng.Sci. 1973, 13:462-468.
  • 4王宜,何慧,张锋,贾德民,罗远芳,陈广强,宋子明.炭黑/聚乙烯导电复合材料PTC特性的研究(Ⅰ)——影响PTC特性的因素[J].华南理工大学学报(自然科学版),2002,30(6):69-72. 被引量:6
  • 5Voet A. Temperature effect of electrical resistivity of carbon black filled polymers. Rubberchem Technol. 1981, 54:42-50.
  • 6Wang B X, Yi X S, Pan Y. Volume expansion dependence ofPTC effet of carbon black loaded polymer composite [J]. J Mat Sci Lett. 1997,16(24): 2005-2007.
  • 7Zhao Z D, Yu W X, He X J.The conduction mechanism of carbon black-filled poly(vinylidene fluoride) composite [J]. Mat Lett. 2003, 57(20): 3082- 3088.
  • 8郑强,沈烈,李文春,宋义虎,益小苏.导电粒子填充HDPE复合材料的非线性导电特性与标度行为[J].科学通报,2004,49(22):2257-2267. 被引量:17
  • 9窦强,赵石林,张玲,黄小彬,季军宏.PVDF/炭黑导电复合材料的PTC性能研究[J].工程塑料应用,2000,28(2):3-5. 被引量:2
  • 10Xi Y, Ishikawa H, Bin Y Z. Positive temperature coefficient effect of LMWPE - UHMWPE blends filled with short carbon fibers [J]. Carbon. 2004, 42(8): 1699-1706.

二级参考文献11

共引文献25

同被引文献42

  • 1武利顺,孙俊芬,王庆瑞.聚偏氟乙烯膜研究进展[J].膜科学与技术,2004,24(5):63-68. 被引量:39
  • 2郝永德,钟海波,熊眩,龚树萍.双施主掺杂对高居里点PTC陶瓷性能的影响[J].电子元件与材料,2005,24(10):45-47. 被引量:2
  • 3郑强,税波,沈烈.炭黑填充多组分高分子导电复合材料的研究进展[J].高分子材料科学与工程,2006,22(4):15-18. 被引量:25
  • 4朱云松,徐天华.高温PTC陶瓷中铅对T_C移动效果的实验[J].电子元件与材料,1997,16(3):20-22. 被引量:6
  • 5Kono A, Shimizu K, Nakano H, et al. Positive-temperature- coefficient effect of electrical resistivity below melting point of poly(vinyliden: fluoride) (PVDF) in Ni particle-dispersed PVDF composites[J]. Polymer,2012,53(8): 1 760-1 764.
  • 6Meng Longyue, Park S J. Preparation and characterization of reduced graphene nano-sheets via pre-exfoliation of graphite flakes bull[J]. Korean Chem Soc,2012,33(1):209-214.
  • 7Li Yuqi, Wang Qihua, Wang Tingmei, et al. Preparation and tribological properties of graphene oxide/nitrile rubber nanocomposites[J]. Journal of Materials Science,2012,47(2):730- 738.
  • 8May P, Khan U, O'NeiU A, et al. Approaching the theoretical limit for reinforcing polymers with graphene[J]. Journal of Materials Chemistry, 2012,22 (4): 1 278.
  • 9Weitz R T, Yacoby A. Nanomaterials:Graphene rests easy[J]. Nature Nanotechnology, 2010,5(10):699-700.
  • 10Ziegler K. Minimal conductivity of graphene:Nonuniversal values from the Kubo formula[J]. Physical Review B,2007,75(23):233- 407.

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